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entirely composed of surface atoms. Examples of the properties include light-plasmon non-linearities and in particular the possibility of grating coupling to surface plasmon polaritons using a photoinduced
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facilities for protein expression; access to modern biophysical instrumentation (surface plasmon resonance, dynamic light scattering, isothermal calorimetry, CD and fluorescence spectrometers) and cryo-EM is
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receptors. The work will involve some or all of the following methods: single particle cryo-electron microscopy, cryo-electron tomography, X-ray crystallography, surface plasmon resonance, protein engineering
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, surface plasmon resonance, and isothermal titration calorimetry. Project management and supervision Must be able to work as part of a multidisciplinary team Must be able to undertake both independent and
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. The post-holder will have access to our suite of existing unique experimental methods with the opportunity to expand them or use them as tools. These include all-optical magneto-plasmonic writing
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/or x-ray crystallography, and biophysical analysis of protein-protein interactions using Surface Plasmon Resonance and/or Microsale Thermophoresis systems. Experience or good working knowledge
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molecular magnets, plasmonics, battery technology, medical imaging agents and applications for 3D printing. PhD: 3-4 years full-time; 6-8 years part-time; Thesis of Max 80,000 words MSc (Research): 1-2 years